Bone marrow cell development and trabecular bone dynamics after ovariectomy in ddy mice

To clarify the relationship between the sequential changes of trabecular bone turnover and bone marrow cell development in ovariectomized (ovx) mice, bilateral tibiae of 8-week-old ddy mice were obtained. Histomorphometric analyses of the trabecular bone of the proximal tibia of ovx mice revealed in...

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Published in:Bone (New York, N.Y.) Vol. 23; no. 5; pp. 443 - 451
Main Authors: Sakai, A., Nishida, S., Okimoto, N., Okazaki, Y., Hirano, T., Norimura, T., Suda, T., Nakamura, T.
Format: Journal Article
Language:English
Published: New York, NY Elsevier Inc 01-11-1998
Elsevier Science
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Abstract To clarify the relationship between the sequential changes of trabecular bone turnover and bone marrow cell development in ovariectomized (ovx) mice, bilateral tibiae of 8-week-old ddy mice were obtained. Histomorphometric analyses of the trabecular bone of the proximal tibia of ovx mice revealed increases in the bone formation rate and the osteoclast surface for the first 28 days postovariectomy. The trabecular bone volume showed a rapid decrease for the first 28 days and a steady state for the subsequent 14 days. In bone marrow cell culture experiments, the numbers of total and nonadherent bone marrow cells per tibia obtained from the ovx mice increased. The formation of osteogenic nodules and osteoclast-like multinucleated cells in the marrow cultures obtained from ovx limbs showed a significant increase on days 14 and 28 and returned to the sham-operated level by day 42. The numbers of colony forming units (fibroblastic) and colony forming units (granulocytes and macrophages) that developed from the marrow cells did not differ between the ovx and sham limbs at any time during the study period. Fluorescence-activated cell-sorter analysis revealed no population changes in the cell development of macrophages. These results demonstrate that there are two stages in the development of osteopenia after ovx. During the first 28 days after ovx, the ovariectomy enhances the developmental process from bone marrow stromal cells to osteoblasts and the terminal differentiation from osteoclast precursors to mature osteoclasts. The trabecular bone turnover also increases. In the subsequent 14 days, the changes in the osteogenic and osteoclastogenic potentials of the bone marrow cells are alleviated and the trabecular bone dynamics are in a steady state. The changes in bone marrow cell development are closely associated with those at the trabecular bone surface.
AbstractList To clarify the relationship between the sequential changes of trabecular bone turnover and bone marrow cell development in ovariectomized (ovx) mice, bilateral tibiae of 8-week-old ddy mice were obtained. Histomorphometric analyses of the trabecular bone of the proximal tibia of ovx mice revealed increases in the bone formation rate and the osteoclast surface for the first 28 days postovariectomy. The trabecular bone volume showed a rapid decrease for the first 28 days and a steady state for the subsequent 14 days. In bone marrow cell culture experiments, the numbers of total and nonadherent bone marrow cells per tibia obtained from the ovx mice increased. The formation of osteogenic nodules and osteoclast-like multinucleated cells in the marrow cultures obtained from ovx limbs showed a significant increase on days 14 and 28 and returned to the sham-operated level by day 42. The numbers of colony forming units (fibroblastic) and colony forming units (granulocytes and macrophages) that developed from the marrow cells did not differ between the ovx and sham limbs at any time during the study period. Fluorescence-activated cell-sorter analysis revealed no population changes in the cell development of macrophages. These results demonstrate that there are two stages in the development of osteopenia after ovx. During the first 28 days after ovx, the ovariectomy enhances the developmental process from bone marrow stromal cells to osteoblasts and the terminal differentiation from osteoclast precursors to mature osteoclasts. The trabecular bone turnover also increases. In the subsequent 14 days, the changes in the osteogenic and osteoclastogenic potentials of the bone marrow cells are alleviated and the trabecular bone dynamics are in a steady state. The changes in bone marrow cell development are closely associated with those at the trabecular bone surface.
Author Nishida, S.
Okazaki, Y.
Norimura, T.
Okimoto, N.
Suda, T.
Sakai, A.
Nakamura, T.
Hirano, T.
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Issue 5
Keywords Bone marrow cell
Fluorescence-activated cell sorter
Bone turnover
Ovariectomy
Colony forming units (fibroblastic)
Colony forming units (granulocytes and macrophages)
Animal model
Cell function
Pathophysiology
Rodentia
Diseases of the osteoarticular system
Exploration
Bone disease
Bone remodeling
Osteoarticular system
Osteoporosis
Vertebrata
Mammalia
Mouse
Tibia
Bone marrow
Bone
Morphometry
Language English
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Snippet To clarify the relationship between the sequential changes of trabecular bone turnover and bone marrow cell development in ovariectomized (ovx) mice, bilateral...
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SubjectTerms Animals
Biological and medical sciences
Bone marrow cell
Bone Marrow Cells - physiology
Bone Remodeling - physiology
Bone turnover
Cell Count
Cells, Cultured
Colony forming units (fibroblastic)
Colony forming units (granulocytes and macrophages)
Connective Tissue Cells
Diseases of the osteoarticular system
Female
Flow Cytometry
Fluorescence-activated cell sorter
Granulocytes - physiology
Medical sciences
Mice
Osteoclasts - physiology
Osteoporosis. Osteomalacia. Paget disease
Ovariectomy
Space life sciences
Stem Cells
Tibia - cytology
Tibia - physiology
Title Bone marrow cell development and trabecular bone dynamics after ovariectomy in ddy mice
URI https://dx.doi.org/10.1016/S8756-3282(98)00121-5
https://www.ncbi.nlm.nih.gov/pubmed/9823451
https://search.proquest.com/docview/70079482
Volume 23
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